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1. Interplay Between Mixed and Pure Exciton States Controls Singlet Fission in Rubrene Single Crystals

2. Intermolecular CT excitons enable nanosecond excited-state lifetimes in NIR-absorbing non-fullerene acceptors for efficient organic solar cells

3. Frontier Orbital Degeneracy: A new Concept for Tailoring the Magnetic State in Organic Semiconductor Adsorbates

4. Tailoring on-surface molecular reactions and assembly through hydrogen-modified synthesis: From triarylamine monomer to 2D covalent organic framework

5. Electronic structure of confined carbyne from joint wavelength-dependent resonant Raman spectroscopy and density functional theory investigations

7. The influence of impurities on the charge carrier mobility of small molecule organic semiconductors

8. Understanding charge transport in donor/acceptor blends from large-scale device simulations based on experimental film morphologies

9. Dynamically switching the surface electronic and electrostatic properties of indium tin oxide electrodes with photochromic monolayers

12. Polaron Self-localization in White-light Emitting Hybrid Perovskites

13. Mode-selective vibrational control of charge transport in $\pi$-conjugated molecular materials

14. Optical conductivity and optical effective mass in a high-mobility organic semiconductor: Implications for the nature of charge transport

15. The Excited-State Lifetime of Poly(NDI2OD-T2) Is Intrinsically Short.

18. Synthesis of Deuterated and Sulfurated Polymers by Inverse Vulcanization: Engineering Infrared Transparency via Deuteration

20. Thermal Narrowing of the Electronic Bandwidths in Organic Molecular Semiconductors: Impact of the Crystal Thermal Expansion

21. Symmetry Effects on Nonlocal Electron-Phonon Coupling in Organic Semiconductors

24. Correlating the Hybridization of Local‐Exciton and Charge‐Transfer States with Charge Generation in Organic Solar Cells

26. On the Mechanism of the Inverse Vulcanization of Elemental Sulfur: Structural Characterization of Poly(sulfur-random-(1,3-diisopropenylbenzene))

28. Delocalization of exciton and electron wavefunction in non-fullerene acceptor molecules enables efficient organic solar cells

29. Additive-free molecular acceptor organic solar cells processed from a biorenewable solvent approaching 15% efficiency.

30. Revealing the crystalline packing structure of Y6 in the active layer of organic solar cells: the critical role of solvent additives.

32. Design of Organic Molecules with Large Two-Photon Absorption Cross Sections

33. Design rules for minimizing voltage losses in high-efficiency organic solar cells

41. Small Optical Gap Molecules and Polymers: Using Theory to Design More Efficient Materials for Organic Photovoltaics

44. Revealing the Crystalline Packing Structure of Y6 in the Active Layer of Organic Solar Cells: The Critical Role of Solvent Additives

49. Theoretical Design of Organic Chromophores with Large Two-Photon Absorption Cross-Sections

50. A Universal Method to Produce Low-Work Function Electrodes for Organic Electronics

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